CUTTING INSERT
20220388071 · 2022-12-08
Assignee
Inventors
Cpc classification
B23B27/145
PERFORMING OPERATIONS; TRANSPORTING
B23B27/148
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A cutting insert that suppresses softening of joint material in a joint surface between a sintered body and a base body to improve the joint strength, and that enables size reduction of the sintered body, is provided. The cutting insert includes a sintered body having a cutting edge, and a base body having a leading end where the sintered body is joined via a braze material. The sintered body includes a front surface on a leading side, an upper surface connected to the front surface and forming the cutting edge with the front surface along a connecting edge with the front surface, a bottom surface opposite the upper surface, a back surface opposite the front surface, and two side surfaces. The sintered body and base body are joined together in a joint surface including the bottom surface and back surface of the sintered body. The joint surface in side view has a step-like shape with a leading side thereof being lower than a trailing side thereof.
Claims
1. A cutting insert comprising: a sintered body having a cutting edge; and a base body having a leading end where the sintered body is joined to the base body via a joint material, the sintered body including a front surface on a leading side of the sintered body, an upper surface connected to the front surface with the cutting edge being formed along a connecting edge between the upper surface and the front surface, a bottom surface opposite the upper surface, a back surface opposite the front surface, and two side surfaces connected to the front surface, the upper surface, the bottom surface, and the back surface, the sintered body and the base body being joined together in a joint surface that includes the bottom surface and the back surface of the sintered body, the joint surface in side view having a step-like shape, with a leading side thereof being lower than a trailing side thereof.
2. The cutting insert according to claim 1, wherein the joint surface includes a plurality of flat joint surfaces extending from the leading side to the trailing side of the joint surface, and a plurality of erected joint surfaces extending upward, and the flat joint surfaces and the erected joint surfaces alternate from the leading side to the trailing side of the joint surface.
3. The cutting insert according to claim 2, wherein the flat joint surfaces in side view are inclined such that a trailing side thereof is lower than a leading side thereof.
4. The cutting insert according to claim 2, wherein the plurality of flat joint surfaces include a first flat joint surface located on the leading side thereof and a second flat joint surface located on the trailing side thereof, the first flat joint surface having a length equal to, or longer than, that of the second flat joint surface in a front-back direction.
5. The cutting insert according to claim 2, wherein the plurality of flat joint surfaces include a first flat joint surface located on the leading side thereof and a second flat joint surface located on the trailing side thereof, the second flat joint surface having a length longer than that of the first flat joint surface.
6. The cutting insert according to claim 2, wherein the joint surface includes an intermediate joint surface connecting the flat joint surface and the erected joint surface, and the intermediate joint surface in side view is upwardly convexly curved.
7. The cutting insert according to claim 1, wherein the sintered body in side view has a height in the front surface that is 110% or more of a height in the back surface.
8. The cutting insert according to claim 1, wherein the joint surface in side view further includes a downwardly projecting shape behind the step-like shape.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0016]
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DETAILED DESCRIPTION
[0027] Hereinafter a preferred embodiment of the present invention will be described with reference to the drawings.
[0028]
[0029] The cutting tool 1 is for example a grooving tool. The cutting tool 1 includes the cutting insert 10 and a tool body 11 that rigidly holds the cutting insert 10. The cutting insert 10 can be fixedly mounted to the tool body 11 of the cutting tool 1 by fastening a screw 12.
[0030] The tool body 11 has an elongated shape and holds the cutting insert 10 at the leading end thereof. The structure or shape of the tool body 11 are not limited to this example.
[0031]
[0032] As shown in
[0033] The base body 21 has a shape elongated in the front-back direction X, with the sintered body 20 joined to a leading end 21a of the base body.
[0034] The sintered body 20 is for example a CBN (cubic boron nitride) sintered body or a diamond sintered body. As shown in
[0035] The front surface 40 is substantially quadrilateral in front elevation view shown in
[0036] The upper surface 42 is substantially quadrilateral in top plan view shown in
[0037] As shown in
[0038] As shown in
[0039] The bottom surface 43 and back surface 44 in side view, as shown in
[0040] As shown in
[0041] As shown in
[0042] As shown in
[0043] The upper surface 21b of the base body 21 includes a first flat surface 90, a first erected surface 91, an intermediate surface 92, a second flat surface 93, and a second erected surface 94 in this order from the leading side toward the trailing side. The first flat surface 90 and first erected surface 91 are connected to each other, the first erected surface 91 and intermediate surface 92 are connected to each other, the intermediate surface 92 and second flat surface 93 are connected to each other, and the second flat surface 93 and second erected surface 94 are connected to each other.
[0044] The first flat surface 90, first erected surface 91, second flat surface 93, and second erected surface 94 each have a rectangular shape elongated in the left and right direction Y. The first flat surface 90 and second flat surface 93 are inclined such that the trailing side is lower than the leading side. The intermediate surface 92 is curved in a circular arc and projected upward. The first erected surface 91 and second erected surface 94 are slightly inclined to the up and down direction Z upward and backward.
[0045] The joint surface 70 between the sintered body 20 and the base body 21 is made up of joints between the first flat surface 80 of the sintered body 20 and the first flat surface 90 of the base body 21 respectively shown in
[0046] Namely, the joint surface 70 has a step-like shape, with the leading side being lower than the trailing side, and includes, in side view shown in
[0047] The first flat joint surface 100 and second flat joint surface 103 are inclined such that the trailing side is lower than the leading side. The first flat joint surface 100 has a length that is for example equal to, or longer than, that of the second flat joint surface 103 in the front-back direction X.
[0048] The intermediate joint surface 102 is curved in a circular arc and projected upward. The first erected joint surface 101 and second erected joint surface 104 are slightly inclined to the up and down direction Z upward and backward.
[0049] The sintered body 20 in the front surface 40 has a height H1 that is 110% or more, preferably 120% or more and 400% or less, and more preferably 150% or more and 300% or less, of a height H2 in the back surface 44.
[0050] According to this embodiment, the joint surface 70 between the sintered body 20 and the base body 21 has a step-like shape, because of which the leading side of the joint surface 70 (braze material A closer to the front surface 40 of the sintered body 20), where the temperature becomes relatively high during the cutting by the cutting edge 50, is located away from the cutting edge 50. This can minimize the thermal softening of the braze material A on the joint surface 70. In parting-off and grooving applications, in particular, the highest temperature during the machining is observed at the cutting edge 50 on the front surface. Therefore, the leading side of the joint surface 70 being away from the cutting edge 50 effectively minimizes the softening of the braze material A on the joint surface 70. The step-like shape also enables an increase in the joint area of the joint surface 70 between the sintered body 20 and the base body 21, which enhances the brazing strength. This can minimize fracture of the sintered body 20 from the base body 21. The trailing side of the joint surface 70 being closer to the upper surface 42 of the sintered body 20 means that the sintered body 20 is thinner on the side closer to the back surface 44. This enables a reduction in the amount of material used for the sintered body 20 and leads to size reduction of the sintered body 20. Thus the cost for the cutting insert 10 can be reduced.
[0051] Additionally, the step-like shape provides the following effect. In a joint without the step-like shape, for example, an effective area of brazed joint would be mainly that of a flat joint surface, and an erected joint surface would only be complementary. A step-like shape, in contrast, allows part of the erected joint surface to account for the brazing area equally to the flat joint surface. Namely, the sintered body 20 converts part of the joint area in the front-back direction X to a joint area in the up and down direction Z, which allows the length in the front-back direction X, i.e., the volume, to be significantly reduced, compared to a sintered body having a thickness of H1 and a linear joint surface instead of a stepped one.
[0052] Since the first flat joint surface 100 and second flat joint surface 103 of the joint surface 70 are inclined such that the trailing side is lower than the leading side, the joint area of the joint surface 70 between the sintered body 20 and the base body 21 is increased even more, which enhances the brazing strength. The inclination also makes it easier for the sintered body 20 and the base body 21 to engage each other, which also enhances the brazing strength.
[0053] The first flat joint surface 100 on the leading side has a length that is equal to, or longer than, that of the second flat joint surface 103 on the trailing side in the front-back direction X. Since the first flat joint surface 100 on the leading side, which is subjected to a larger load during cutting, has a larger joint area, the brazing strength is increased.
[0054] The intermediate joint surface 102 in side view is upwardly projected and curved so that the joint area of the joint surface 70 between the sintered body 20 and the base body 21 is further increased, which enhances the brazing strength.
[0055] The sintered body 20 in the front surface 40 has a height H1 that is 110% or more than the height H2 in the back surface 44, which makes the trailing side of the joint surface 70 closer enough to the upper surface 42 of the sintered body 20, i.e., makes the sintered body 20 thin enough, to achieve size reduction of the sintered body 20.
[0056] In the embodiment described above, the first flat joint surface 100 on the leading side is longer than the second flat joint surface 103 on the trailing side. Instead, as shown in
[0057] The joint surface 70 in side view may further include a downwardly projecting shape behind the step-like shape as shown in
[0058] The joint surface 70 may have a corrugated second erected joint surface 104, which is the rear end face in top plan view as shown in
[0059] While a preferred embodiment of the present invention has been described with reference to the accompanying drawings, the present invention is not limited to this example. Various modifications or alterations a person skilled in the art could obviously conceive within the scope set forth in the claims are naturally understood to belong to the technical scope of the present invention.
[0060] In the embodiment described above, the joint surface 70 may have any other shape as long as it includes steps in side view. The first flat joint surface 100 and second flat joint surface 103 may be horizontal to the upper surface 42 instead of being inclined. The first erected joint surface 101 and second erected joint surface 104 may be perpendicular to the upper surface 42. The intermediate joint surface 102 may not be curved in a circular arc. The intermediate joint surface 102 may be omitted, and the first erected joint surface 101 and second flat joint surface 103 may be directly connected to each other.
[0061] The step-like shape of the joint surface 70 may have any number of steps (flat joint surfaces), i.e., not only two as in the embodiment described above but also three or more. The shapes of sintered body 20 and base body 21 are not limited to those of the embodiment described above.
[0062] The cutting insert 10 described in the above embodiment is not limited to grooving applications but may be used for external turning, face turning, copy machining, internal turning, and so on.
[0063] The present invention is useful in providing a cutting insert and a cutting tool with a high chip control both in grooving and turning applications.